Morning Overview on MSN
Fusion reactors might accidentally create dark matter, new paper claims
Physicists have spent decades chasing two grand technological dreams: harnessing fusion power and uncovering the nature of ...
Morning Overview on MSN
Fusion reactors might create dark matter axions, and that’s wild
Fusion power has long been sold as the technology that could light our cities with the same process that powers the stars.
Although no axion signal was observed, researchers say the system demonstrated stable operation, tunability, and the ability ...
Space.com on MSNOpinion
What old, dying stars teach us about axions as a candidate for dark matter
In recent years, astronomers have become increasingly interested in a theoretical particle known as the axion, which was ...
A new theory suggests fusion reactors could help scientists search for axions, mysterious particles that may explain dark ...
In addition, astrophysical observations had revealed that occasionally, white dwarfs would cool off way faster than expected.
Axions, first postulated to resolve the strong‐CP problem in quantum chromodynamics, have emerged as a leading candidate for dark matter. Their incredibly weak interactions make them challenging to ...
The Nature Index 2025 Research Leaders — previously known as Annual Tables — reveal the leading institutions and countries/territories in the natural and health sciences, according to their output in ...
Physicists have begun using the gigantic magnetic fields of galaxy clusters to observe distant black holes in their search for an elusive particle that has stumped scientists for decades. (Nanowerk ...
I have a question about the distinction between 'light emitting matter', and 'invisible' matter, the 'dark matter', So, where do objects like planets, asteroids, comets, dust, and particles like ...
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